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As functional genomics has become one of the major focuses in molecular biology, the need for more sophisticated tools to assist in the identification of the functionality of undefined genes and the correlation of DNA variants with a particular phenotype has increased greatly. In Silico Tools for Gene Discovery collects many common and useful in silico tools available today. The volume begins by investigating locus mapping information on linkage analysis, association mapping, integrative analysis, and exome analysis as well as tools for DNA marker selection, in silico PCR, and statistical analysis. It continues with a section on gene discovery from a defined locus, including gene prioritization, knowledge tracking, and data mining, and concludes with several useful in silico tools presented for the functional characterization of genes, which include DNA sequencing analysis, variant characterization, as well as RNA and protein analysis. Written in the highly successful Methods in Molecular Biology (TM) series format, chapters include introductions to their respective topics, step-by-step, readily reproducible protocols, and vital notes on troubleshooting and avoiding known pitfalls. Resourceful and easy to follow, In Silico Tools for Gene Discovery seeks to facilitate scientists with further key research on locus mapping, to accelerate gene identification, and to help ascertain the functionality of DNA variation.
Heritage Sites in Contemporary China: Cultural Policies and Management Practices focuses on cultural heritage policies in China emerging in the period of the 11th and 12th Five Year Plans. Various important Chinese sites across China are investigated, including Luoyang Sui, Daming Gong, Niuheliang, Xinjiang, and Nanyuewang through the dual perspective of archaeological debate and as a case study of policy making. It explores the relationship between policy and the institutional and administrative conditions, such as budgeting and land concerns, which affect it. Building on the research project implemented by the China Academy for Cultural Heritage (CACH) from 2012-2014, which focused on the impact of the Dayizhi Policy for Great Archaeological Sites, the book provides an interdisciplinary insider's approach to viewing archaeological discoveries; policies and emerging practices in site and archaeological management; and public administration in China. Featuring contributions from experts within CACH and from the Chinese community of archaeologists, and including numerous tables, data and maps, it will appeal to researchers and scholars in disciplines such as archaeology, heritage management, public administration, and policy making.
Heritage Sites in Contemporary China: Cultural Policies and Management Practices focuses on cultural heritage policies in China emerging in the period of the 11th and 12th Five Year Plans. Various important Chinese sites across China are investigated, including Luoyang Sui, Daming Gong, Niuheliang, Xinjiang, and Nanyuewang through the dual perspective of archaeological debate and as a case study of policy making. It explores the relationship between policy and the institutional and administrative conditions, such as budgeting and land concerns, which affect it. Building on the research project implemented by the China Academy for Cultural Heritage (CACH) from 2012-2014, which focused on the impact of the Dayizhi Policy for Great Archaeological Sites, the book provides an interdisciplinary insider's approach to viewing archaeological discoveries; policies and emerging practices in site and archaeological management; and public administration in China. Featuring contributions from experts within CACH and from the Chinese community of archaeologists, and including numerous tables, data and maps, it will appeal to researchers and scholars in disciplines such as archaeology, heritage management, public administration, and policy making.
The field of control theory in PDEs has broadened considerably as more realistic models have been introduced and investigated. This book presents a broad range of recent developments, new discoveries, and mathematical tools in the field. The authors discuss topics such as elasticity, thermo-elasticity, aero-elasticity, interactions between fluids and elastic structures, and fluid dynamics and the new challenges that they present. Other control theoretic problems include parabolic systems, dynamical Lame systems, linear and nonlinear hyperbolic equations, and pseudo-differential operators on a manifold. This is a valuable tool authored by international specialists in the field.
As functional genomics has become one of the major focuses in molecular biology, the need for more sophisticated tools to assist in the identification of the functionality of undefined genes and the correlation of DNA variants with a particular phenotype has increased greatly. In Silico Tools for Gene Discovery collects many common and useful in silico tools available today. The volume begins by investigating locus mapping information on linkage analysis, association mapping, integrative analysis, and exome analysis as well as tools for DNA marker selection, in silico PCR, and statistical analysis. It continues with a section on gene discovery from a defined locus, including gene prioritization, knowledge tracking, and data mining, and concludes with several useful in silico tools presented for the functional characterization of genes, which include DNA sequencing analysis, variant characterization, as well as RNA and protein analysis. Written in the highly successful Methods in Molecular Biology (TM) series format, chapters include introductions to their respective topics, step-by-step, readily reproducible protocols, and vital notes on troubleshooting and avoiding known pitfalls. Resourceful and easy to follow, In Silico Tools for Gene Discovery seeks to facilitate scientists with further key research on locus mapping, to accelerate gene identification, and to help ascertain the functionality of DNA variation.
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